Wagner Eric J, Burch Brandon D, Godfrey Ashley C, Salzler Harmony R, Duronio Robert J, Marzluff William F
Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Mol Cell. 2007 Nov 30;28(4):692-9. doi: 10.1016/j.molcel.2007.10.009.
Metazoan replication-dependent histone mRNAs are not polyadenylated and instead end in a conserved stem loop that is the cis element responsible for coordinate posttranscriptional regulation of these mRNAs. Using biochemical approaches, only a limited number of factors required for cleavage of histone pre-mRNA have been identified. We therefore performed a genome-wide RNA interference screen in Drosophila cells using a GFP reporter that is expressed only when histone pre-mRNA processing is disrupted. Four of the 24 genes identified encode proteins also necessary for cleavage/polyadenylation, indicating mechanistic conservation in formation of different mRNA 3' ends. We also unexpectedly identified the histone variants H2Av and H3.3A/B. In H2Av mutant cells, U7 snRNP remains active but fails to accumulate at the histone locus, suggesting there is a regulatory pathway that coordinates the production of variant and canonical histones that acts via localization of essential histone pre-mRNA processing factors.
后生动物复制依赖性组蛋白mRNA不进行多聚腺苷酸化,而是以一个保守的茎环结构结尾,该茎环结构是负责这些mRNA转录后协同调控的顺式元件。利用生化方法,仅鉴定出了少数几种组蛋白前体mRNA切割所需的因子。因此,我们在果蝇细胞中进行了全基因组RNA干扰筛选,使用了一种绿色荧光蛋白报告基因,该报告基因仅在组蛋白前体mRNA加工被破坏时才表达。在鉴定出的24个基因中,有4个编码的蛋白质也是切割/多聚腺苷酸化所必需的,这表明在不同mRNA 3'末端形成过程中存在机制上的保守性。我们还意外地鉴定出了组蛋白变体H2Av和H3.3A/B。在H2Av突变细胞中,U7 snRNP仍然活跃,但无法在组蛋白基因座处积累,这表明存在一种调控途径,通过定位必需的组蛋白前体mRNA加工因子来协调变体组蛋白和经典组蛋白的产生。